English

Magnetic and electronic structure of the layered rare-earth pnictide EuCd$_2$Sb$_2$

Strongly Correlated Electrons 2018-08-22 v3

Abstract

Resonant elastic X-ray scattering (REXS) at the Eu M5M_5 edge reveals an antiferromagnetic structure in layered EuCd2_2Sb2_2 at temperatures below TNT_\textrm{N} = 7.4 K with a magnetic propagation vector of (0,0,1/2)(0,0,1/2) and spins in the basal plane. Magneto-transport and REXS measurements with an in-plane magnetic field show that features in the magnetoresistance are correlated with changes in the magnetic structure induced by the field. Ab initio electronic structure calculations predict that the observed spin structure gives rise to a gapped Dirac point close to the Fermi level with a gap of ΔE\Delta E \sim0.01 eV. The results of this study indicate that the Eu spins are coupled to conduction electron states near the Dirac point.

Keywords

Cite

@article{arxiv.1806.00559,
  title  = {Magnetic and electronic structure of the layered rare-earth pnictide EuCd$_2$Sb$_2$},
  author = {J. -R. Soh and C. Donnerer and K. M. Hughes and E. Schierle and E. Weschke and D. Prabhakaran and A. T. Boothroyd},
  journal= {arXiv preprint arXiv:1806.00559},
  year   = {2018}
}